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MP4051 Datasheet(PDF) 5 Page - Monolithic Power Systems |
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MP4051 Datasheet(HTML) 5 Page - Monolithic Power Systems |
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5 / 16 page ![]() MP4051—NON-ISOLATED OFFLINE LED CONTROLLER WITH ACTIVE PFC MP4051 Rev. 1.01 www.MonolithicPower.com 5 1/21/2014 MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited. © 2014 MPS. All Rights Reserved. PIN FUNCTIONS Pin # Name Pin Function 1 MULT Multiplier input. Connect this pin to the tap of resistor divider from the rectified voltage of the AC line. The half-wave sinusoid signal to this pin provides a reference signal for the internal current control loop. 2 ZCD Zero-current detection. A negative going-edge triggers the turn-on signal of the external MOSFET. Connect this pin to a resistor divider between the auxiliary winding to GND. Over- voltage condition is detected through ZCD. Every switching turn-off interval, if ZCD voltage is higher than the over-voltage-protection (OVP) threshold after the 1.5µs blanking time, the over-voltage protection will be triggered and the system will stop switching until auto-restart comes. ZCD pin can also monitor over-current condition. Connect this pin thru a diode to a resistor divider between CS to GND. Every switching turn-on interval, if ZCD voltage is higher than the over-current-protection (OCP) threshold after the 280ns blanking time, the over-current protection will trigger and the system will stop switching until auto-restart comes. 3 VCC Power supply input. This pin supplies the power for the control signal and the high-current MOSFET grade drive output. Bypass this pin to ground with an external bulk capacitor of typically 22µF in parallel with a 100pF ceramic cap to reduce noise. 4 GATE Gate drive output. This totem pole output stage is able to drive a high-power MOSFET with a peak current of 1A source capability and 1.2A sink capability. The high level voltage of this pin is clamped to 13.5V to avoid excessive gate drive voltage. And the low level voltage is higher than 6V to guarantee enough drive capacity. 5 CS Current sense. The MOSFET current is sensed via a sensing resistor to its source lead. The comparison between the resulting voltage and the internal sinusoidal-current reference signal determines when the MOSFET turns off. In Buck-Boost solution (both high side and low side), CS Pin is also used for current sample. A feed-forward from the rectified AC line voltage connected to the current sense pin maximizes the line regulation. If the pin voltage is higher than the current limit threshold of 2.5V (after turn-on blanking) the gate drive will turn off. 6 GND Ground. Current return for the control signal and the gate drive signal. 7 FB/NC Feedback signal. This Pin is used for current sample in high side Buck-Boost or Buck, and it’s benefit for load regulation to sample the current through FB Pin. Leave this pin floating (NC) in low side Buck-Boost solution. 8 COMP Loop compensation input. Connect a compensation network to stabilize the LED drive and maintain an accurate LED current. |
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